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WO2018103278A1 - Climatiseur et procédé de commande de vitesse de vent associé - Google Patents

Climatiseur et procédé de commande de vitesse de vent associé Download PDF

Info

Publication number
WO2018103278A1
WO2018103278A1 PCT/CN2017/085944 CN2017085944W WO2018103278A1 WO 2018103278 A1 WO2018103278 A1 WO 2018103278A1 CN 2017085944 W CN2017085944 W CN 2017085944W WO 2018103278 A1 WO2018103278 A1 WO 2018103278A1
Authority
WO
WIPO (PCT)
Prior art keywords
wind speed
temperature value
air conditioner
speed model
body surface
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2017/085944
Other languages
English (en)
Chinese (zh)
Inventor
屈金祥
赖想球
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Midea Group Co Ltd
Midea Group Wuhan Refrigeration Equipment Co Ltd
Original Assignee
Midea Group Co Ltd
Midea Group Wuhan Refrigeration Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Midea Group Co Ltd, Midea Group Wuhan Refrigeration Equipment Co Ltd filed Critical Midea Group Co Ltd
Publication of WO2018103278A1 publication Critical patent/WO2018103278A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • F24F11/72Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
    • F24F11/74Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
    • F24F11/77Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity by controlling the speed of ventilators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

Definitions

  • the air conditioner When the air conditioner is in the cooling or heating mode, it is usually operated according to the parameter values such as the preset temperature or wind speed of the user.
  • the air conditioner is not really suitable for the user after running according to the preset parameters of the user, for example, some users are In a relatively hot environment, set a relatively low temperature, such as 20 ° C cooling, after a period of time, the room temperature will quickly decrease, at this time the user will feel cold, so the air conditioner's set temperature is raised, causing the user's Uncomfortable.
  • the present invention provides a wind speed control method for an air conditioner, comprising the following steps:
  • the body surface temperature value is detected by the smart wearable device or detected by an infrared sensor provided on the air conditioner.
  • the present invention also provides an air conditioner, the air conditioner comprising:
  • FIG. 1 is a schematic flow chart of an embodiment of a method for controlling wind speed of an air conditioner according to the present invention
  • Figure 8 is a proportional wind speed model for determining wind speed based on the rotational speed
  • Figure 9 is a proportional wind speed model for determining wind speed according to windshield
  • the step S3 further includes:
  • the step S3 further includes:
  • the step S3 further includes:
  • the maximum wind speed model is selected when it is determined that the body surface temperature value is greater than or equal to the first temperature value.
  • the selection module 20 is further configured to:
  • the wind speeds felt at different positions of the human body are different, such as the head, the middle (chest, waist, legs, etc.) and the position of the foot from the air outlet of the air conditioner are different, therefore, different
  • the wind speed of the part is different.
  • the foot position height is 0.2m
  • the middle position height is 0.7m
  • the head position height is 1.2m, which is mainly for the user sitting.
  • different wind speed models are at a certain speed or wind. Under the file, the corresponding selected wind speed is as follows:

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Atmospheric Sciences (AREA)
  • Fuzzy Systems (AREA)
  • Mathematical Physics (AREA)
  • Signal Processing (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

L'invention concerne un procédé de commande de la vitesse du vent pour un climatiseur, le procédé consistant : étape (S1), à acquérir une valeur de la température d'une surface corporelle d'un corps humain, et à déterminer une plage dans laquelle la valeur de la température de la surface corporelle est comprise; étape (S2), à sélectionner, en fonction de la plage déterminée, un modèle correspondant de vitesse du vent; et étape (S3), à commander la vitesse du vent du climatiseur en fonction du modèle correspondant de vitesse du vent. Le procédé peut éviter le phénomène de sous-refroidissement ou de surchauffe provoqué lorsqu'un utilisateur fixe un paramètre de régulation du climatiseur, ce qui permet d'améliorer l'expérience utilisateur. L'invention concerne en outre un climatiseur.
PCT/CN2017/085944 2016-12-08 2017-05-25 Climatiseur et procédé de commande de vitesse de vent associé Ceased WO2018103278A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201611122780.2A CN106545976B (zh) 2016-12-08 2016-12-08 空调器及其风速控制方法
CN201611122780.2 2016-12-08

Publications (1)

Publication Number Publication Date
WO2018103278A1 true WO2018103278A1 (fr) 2018-06-14

Family

ID=58396461

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/085944 Ceased WO2018103278A1 (fr) 2016-12-08 2017-05-25 Climatiseur et procédé de commande de vitesse de vent associé

Country Status (2)

Country Link
CN (1) CN106545976B (fr)
WO (1) WO2018103278A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4030111A4 (fr) * 2019-09-17 2023-03-01 Daikin Industries, Ltd. Unité intérieure de soufflante et de climatisation

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106545976B (zh) * 2016-12-08 2020-06-23 美的集团武汉制冷设备有限公司 空调器及其风速控制方法
CN107490138A (zh) * 2017-08-26 2017-12-19 深圳市盛路物联通讯技术有限公司 一种制冷功率控制方法及智能制冷设备
CN107726562A (zh) * 2017-10-12 2018-02-23 上海展扬通信技术有限公司 一种用于控制温度的计算机可读存储介质及空调
CN108444052B (zh) * 2018-02-28 2019-05-07 平安科技(深圳)有限公司 一种空调的控制方法及空调
CN108548299B (zh) * 2018-06-13 2020-10-30 广东美的制冷设备有限公司 空调器的控制方法
CN112503740A (zh) * 2020-11-30 2021-03-16 珠海格力电器股份有限公司 一种空调控制方法、设备及装置、存储介质和空调
CN115523645B (zh) * 2021-06-25 2025-11-04 佛山市顺德区美的电子科技有限公司 一种控制方法、装置、设备及存储介质
CN113932416B (zh) * 2021-10-14 2023-01-13 青岛海尔空调器有限总公司 一种空调制冷控制方法、装置及空调器
CN115218386A (zh) * 2022-06-20 2022-10-21 青岛海尔空调器有限总公司 空调器控制方法、装置及空调器
CN115523635A (zh) * 2022-07-29 2022-12-27 青岛海尔空调器有限总公司 客房智能控制方法、装置、设备、介质及程序产品
CN116558064A (zh) * 2023-06-05 2023-08-08 珠海格力节能环保制冷技术研究中心有限公司 空调器的控制方法、装置、系统与计算机可读存储介质

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6475837A (en) * 1987-09-17 1989-03-22 Daikin Ind Ltd Control device for air conditioner
JP2005127639A (ja) * 2003-10-24 2005-05-19 Daikin Ind Ltd 空気調和装置
CN104197470A (zh) * 2014-09-01 2014-12-10 上海摩软通讯技术有限公司 穿戴设备、穿戴设备控制智能家电的系统及运行方法
CN104896663A (zh) * 2015-05-25 2015-09-09 广东美的制冷设备有限公司 空调器送风方式的调整方法、调整系统及空调器
CN105020848A (zh) * 2015-05-29 2015-11-04 广东美的制冷设备有限公司 空调器及其的风速控制方法
CN105987482A (zh) * 2015-02-05 2016-10-05 青岛海尔空调电子有限公司 一种空调控制方法及空调
CN106545976A (zh) * 2016-12-08 2017-03-29 美的集团武汉制冷设备有限公司 空调器及其风速控制方法

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* Cited by examiner, † Cited by third party
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KR20080001300A (ko) * 2006-06-29 2008-01-03 주식회사 대우일렉트로닉스 공기조화기의 실내기용 응급운전 모드 조작수단을 이용한응급운전 모드 제어방법
KR20090085895A (ko) * 2008-02-05 2009-08-10 엘지전자 주식회사 공기조화기 및 그 제어방법
CN105674494A (zh) * 2016-02-01 2016-06-15 珠海格力电器股份有限公司 空调智能控制装置和系统

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6475837A (en) * 1987-09-17 1989-03-22 Daikin Ind Ltd Control device for air conditioner
JP2005127639A (ja) * 2003-10-24 2005-05-19 Daikin Ind Ltd 空気調和装置
CN104197470A (zh) * 2014-09-01 2014-12-10 上海摩软通讯技术有限公司 穿戴设备、穿戴设备控制智能家电的系统及运行方法
CN105987482A (zh) * 2015-02-05 2016-10-05 青岛海尔空调电子有限公司 一种空调控制方法及空调
CN104896663A (zh) * 2015-05-25 2015-09-09 广东美的制冷设备有限公司 空调器送风方式的调整方法、调整系统及空调器
CN105020848A (zh) * 2015-05-29 2015-11-04 广东美的制冷设备有限公司 空调器及其的风速控制方法
CN106545976A (zh) * 2016-12-08 2017-03-29 美的集团武汉制冷设备有限公司 空调器及其风速控制方法

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4030111A4 (fr) * 2019-09-17 2023-03-01 Daikin Industries, Ltd. Unité intérieure de soufflante et de climatisation

Also Published As

Publication number Publication date
CN106545976B (zh) 2020-06-23
CN106545976A (zh) 2017-03-29

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